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16β-(间氨基甲酰苄基)雌二醇13、16和17位结构修饰对17β-羟基类固醇脱氢酶1型抑制作用及雌激素活性的影响

Impact of structural modifications at positions 13, 16 and 17 of 16β-(m-carbamoylbenzyl)-estradiol on 17β-hydroxysteroid dehydrogenase type 1 inhibition and estrogenic activity.

作者信息

Maltais René, Trottier Alexandre, Barbeau Xavier, Lagüe Patrick, Perreault Martin, Thériault Jean-François, Lin Sheng-Xiang, Poirier Donald

机构信息

Endocrinology and Nephrology Unit, CHU de Québec-Research Center (CHUL, T4), Québec City, QC, Canada; Department of Molecular Medicine, Faculty of Medicine, Université Laval, Québec City, QC, Canada.

Département de chimie, Institut de biologie intégrative et des systèmes (IBIS), Québec City, QC, Canada; Centre de recherche sur la fonction, la structure et l'ingénierie des protéines (PROTEO),Université Laval, Québec City, QC, Canada.

出版信息

J Steroid Biochem Mol Biol. 2016 Jul;161:24-35. doi: 10.1016/j.jsbmb.2015.10.020. Epub 2015 Oct 28.

Abstract

The chemical synthesis of four stereoisomers (compounds 5a-d) of 16β-(m-carbamoylbenzyl)-estradiol, a potent reversible inhibitor of 17β-hydroxysteroid dehydrogenase type 1 (17β-HSD1), and two intermediates (compounds 3a and b) was performed. Assignment of all nuclear magnetic resonance signals confirmed the stereochemistry at positions 13, 16 and 17. Nuclear overhauser effects showed clear correlations supporting a C-ring chair conformation for 5a and b and a C-ring boat conformation for 5c and d. These compounds were tested as 17β-HSD1 inhibitors and to assess their proliferative activity on estrogen-sensitive breast cancer cells (T-47D) and androgen-sensitive prostate cancer cells (LAPC-4). Steroid derivative 5a showed the best inhibitory activity for the transformation of estrone to estradiol (95, 82 and 27%, at 10, 1 and 0.1μM, respectively), but like the other isomers 5c and d, it was found to be estrogenic. The intermediate 3a, however, was weakly estrogenic at 1μM, not at all at 0.1μM, and showed an interesting inhibitory potency on 17β-HSD1 (90, 59 and 22%, at 10, 1 and 0.1μM, respectively). As expected, no compound showed an androgenic activity. The binding modes for compounds 3a and b, 5a-d and CC-156 were evaluated from molecular modeling. While the non-polar interactions were conserved for all the inhibitors in their binding to 17β-HSD1, differences in polar interactions and in binding conformational energies correlated to the inhibitory potencies.

摘要

合成了16β-(间氨基甲酰苄基)雌二醇的四种立体异构体(化合物5a - d),它是一种有效的17β-羟基类固醇脱氢酶1型(17β-HSD1)可逆抑制剂,还合成了两种中间体(化合物3a和b)。所有核磁共振信号的归属确定了13、16和17位的立体化学结构。核Overhauser效应显示出明显的相关性,支持5a和b的C环椅式构象以及5c和d的C环船式构象。对这些化合物进行了测试,作为17β-HSD1抑制剂,并评估它们对雌激素敏感的乳腺癌细胞(T - 47D)和雄激素敏感的前列腺癌细胞(LAPC - 4)的增殖活性。类固醇衍生物5a对雌酮转化为雌二醇表现出最佳抑制活性(分别在10、1和0.1μM时为95%、82%和27%),但与其他异构体5c和d一样,被发现具有雌激素活性。然而,中间体3a在1μM时具有弱雌激素活性,在0.1μM时则完全没有,并且对17β-HSD1显示出有趣的抑制效力(分别在10、1和0.1μM时为90%、59%和22%)。正如预期的那样,没有化合物显示出雄激素活性。通过分子模拟评估了化合物3a和b、5a - d以及CC - 156的结合模式。虽然所有抑制剂与17β-HSD1结合时非极性相互作用保持不变,但极性相互作用和结合构象能量的差异与抑制效力相关。

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